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通过半经验参考势能加速量子力学/分子力学精度下的自由能分布的计算。4. 自适应QM/MM。

Accelerated Computation of Free Energy Profile at Quantum Mechanical/Molecular Mechanics Accuracy via a Semiempirical Reference Potential. 4. Adaptive QM/MM.

机构信息

State Key Laboratory of Precision Spectroscopy, School of Physics and Electronic Science, East China Normal University, Shanghai 200062, China.

NYU-ECNU Center for Computational Chemistry at NYU Shanghai, Shanghai 200062, China.

出版信息

J Chem Theory Comput. 2021 Mar 9;17(3):1318-1325. doi: 10.1021/acs.jctc.0c01149. Epub 2021 Feb 16.

Abstract

Although quantum mechanical/molecular mechanics (QM/MM) methods are now routinely applied to the studies of chemical reactions in condensed phases and enzymatic reactions, they may experience technical difficulties when the reactive region is varying over time. For instance, when the solvent molecules are directly participating in the reaction, the exchange of water molecules between the QM and MM regions may occur on a time scale comparable to the reaction time. To cope with this situation, several adaptive QM/MM schemes have been proposed. However, these methods either add significantly to the computational cost or introduce artificial restraints to the system. In this work, we developed a novel adaptive QM/MM scheme and applied it to the study of a nucleophilic addition reaction. In this scheme, the configuration sampling was performed with a small QM region (without solvent molecules), and the thermodynamic properties under another potential energy function with a larger QM region (with a certain number of solvent molecules and/or different levels of QM theory) are computed via extrapolation using the reference-potential method. Our simulation results show that this adaptive QM/MM scheme is numerically stable, at least for the case studied in this work. Furthermore, this method also offers an inexpensive way to examine the convergence of the QM/MM calculation with respect to the size of the QM region.

摘要

尽管量子力学/分子力学(QM/MM)方法现在已被常规应用于研究凝聚相中的化学反应和酶反应,但当反应区域随时间变化时,它们可能会遇到技术困难。例如,当溶剂分子直接参与反应时,QM 和 MM 区域之间的水分子交换可能会在与反应时间可比的时间尺度上发生。为了应对这种情况,已经提出了几种自适应 QM/MM 方案。然而,这些方法要么大大增加了计算成本,要么对系统引入了人为限制。在这项工作中,我们开发了一种新的自适应 QM/MM 方案,并将其应用于亲核加成反应的研究。在该方案中,使用小的 QM 区域(不含溶剂分子)进行构型采样,并且通过参考势能方法的外推计算,使用另一个具有较大 QM 区域(具有一定数量的溶剂分子和/或不同水平的 QM 理论)的势能函数来计算热力学性质。我们的模拟结果表明,这种自适应 QM/MM 方案在数值上是稳定的,至少对于本工作中研究的情况是如此。此外,该方法还提供了一种廉价的方法来检查 QM/MM 计算在 QM 区域大小方面的收敛性。

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